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首页> 外文期刊>Journal of Applied Physics >Self‐Consistent Ultrasonic Method for the Determination of the Equation of State of Liquids at Very High Pressures
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Self‐Consistent Ultrasonic Method for the Determination of the Equation of State of Liquids at Very High Pressures

机译:确定流体在高压下的状态方程的自洽超声方法

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Ultrasonic measurements on liquids at very high pressures and an accurate self‐consistent ultrasonic method for the determination of the equation of state of liquids at very high pressures are described. The liquid sample is contained in a polyethylene‐lined piston and cylinder device. The method described requires only the measurement of the transit time of an ultrasonic pulse through the liquid as a function of pressure. The difficulties and errors connected with a direct volumetric determination are thus avoided and a high accuracy is achieved. A computation of the uncertainties in the determination of the bulk moduli, the density and the velocity of sound is presented. Experimental results are given for water at 22°C and pressures up to 12.6 kbar. Data for the density of water reported by P. W. Bridgman and by L. H. Adams, and for the velocity of sound reported by Holton et al. are found to be in good agreement with the present work.
机译:描述了在非常高的压力下对超声波的测量,以及一种用于确定非常高的压力下的状态方程的精确的自洽超声方法。液体样品包含在衬有聚乙烯的活塞和气缸装置中。所描述的方法仅需要测量超声波脉冲通过液体作为压力的函数的传播时间。因此避免了与直接体积确定有关的困难和错误,并且获得了高精度。给出了确定体积模量,密度和声速时不确定性的计算。给出了在22°C的水和最高12.6 kbar的压力下的实验结果。 P. W. Bridgman和L. H. Adams报告的水密度数据,以及Holton等人报告的声速数据。被发现与目前的工作非常吻合。

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